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1.
Sea urchins produce high‐energy, membrane‐bound fecal pellets that contain residual nutrients and large quantities of microbiota. These egesta are readily consumed by the shrimp, Litopenaeus vannamei. Egesta of the sea urchin, Lytechinus variegatus, were evaluated as a feed supplement or total replacement for a commercial shrimp diet. Shrimp were stocked at 0.49 g ± 0.06 g initial body weight and housed individually in 2.8‐L tanks in a commercial recirculating zebrafish system. Shrimp were assigned to one of six diets: commercial shrimp feed, reference sea urchin feed, collected dried sea urchin egesta, collected wet sea urchin egesta, half ration of shrimp feed and half collected wet sea urchin egesta, and egesta naturally produced by two sea urchins in polyculture. Equivalent dry matter amounts of each diet were proffered to shrimp in each treatment twice daily, except for those that had complete access to natural egesta excreted by sea urchins in polyculture. Sea urchins were proffered a reference sea urchin feed at 2% body weight daily. After 27 days, shrimp proffered collected dried or wet egesta did not differ significantly in percent weight gain and showed the lowest weight gain. The percent weight gain of shrimp fed the commercial shrimp diet did not differ significantly from that of the shrimp fed half commercial shrimp diet and half egesta. The highest weight gain was recorded for those shrimp that consumed the untouched egesta produced by sea urchins in polyculture. These data suggest that consumed egesta have noteworthy nutritional value and therefore would be beneficial to the culture of extractive species in an integrated multitrophic aquaculture system.  相似文献   
2.
通过对中国草鱼(Ctenopharyngodonidella)和泰国草鱼(Puntiusgonionotus)分别在常规的尼罗罗非鱼(Orechromis,niloticus)、鲤鱼(Cyprinuscarpio)和黑鱼(Channastriata)混养体系中养殖7个月,比较两者对牧草(Brachiariamutica)的利用效果。试验结果表明,中国草鱼与泰国草鱼相比,无论是每尾体重,还是每尾体长、平均每尾日增重都有明显优势(P<0.05).而且,放养3个月后,中国草鱼每尾体重和每尾日增重均极显著地优于泰国草鱼(P<0.01).中国草鱼和泰国草鱼的年产量分别为2186kg/hm ̄2,1233kg/hm ̄2.中国草鱼的成活率比泰国草鱼低,两者分别为38%和86%。  相似文献   
3.
水温13.8~20.0℃下,在容积50 L的塑料水槽中,放养体质量为(1.4±0.6)g的虾夷马粪海胆(Strongylocentrotus intermedius)11个,过量投喂海带(Laminaria japonica),再分别混养体质量为(3.4±0.6)g的仿刺参(Apostichopusjaponicus)0(A组)、3(B组)、5(C组)和10个(D组),体质量为(12.4±1.7)g的菲律宾蛤仔(Ruditapes philippim2rum)6个,排出水培养底栖硅藻和石纯(Ulva lactuca),用底栖硅藻饲喂仿刺参.77 d的饲养表明,仿刺参和海胆的成活率差异不显著(P>0.05),但混养组海胆的特定生长率(SGR)显著高于单养组(P<0.05),B、C和D组海胆的SGR分别比单养高9.12%、7.24%和10.06%,各混养组间差异不显著(P>0.05);混养海胆的饲料系数(7.28~7.70)分别显著低于单养(9.12)(P<0.05)组20.2%、15.5%和18.0%.将刺参的产量计算在内,B、C和D组海胆的饲料系数分别比对照组降低31.5%、26.8%和16.0%,但混养组间差异不显著(P>0.05).海胆和仿刺参的适宜混养比例为11:3.蛤仔和石纯生长慢,死亡率高.养殖排水培养的底栖硅藻以菱形藻(Nitzschia sp.)和卵形藻(Cocameissp.)为主,少量舟形藻(Navicula sp.).混养海胆性腺中亚麻酸、EPA DHA含量和n-3/n-6比值显著大于单养组(P<0.05),混养池水中氨氮含量低而稳,溶氧量高.  相似文献   
4.
参虾池塘高效混养技术   总被引:1,自引:0,他引:1  
7-9月刺参夏眠期间正是日本对虾快速生长的季节,在对虾池中人工造礁,第1年4月放入规格为80~120头/ kg的海参苗1740 kg,每年7月放入体长0.7~1.0 cm的日本对虾虾苗1.2×105尾,将刺参与日本对虾混养.在养殖过程中,刺参不投喂,只用卤虫、人工饲料、杂色蛤和四角蛤蜊投喂日本对虾,严格控制养殖池内的杂鱼虾,保持水质新鲜,可提高日本对虾和刺参的成活率,利用两者饵料和空间互补性,可显著提高虾池的利用率和经济效益.  相似文献   
5.
Abstract In an attempt to identify appropriate feeding rates for multispecies of fish raised in fertilized earthen ponds, the present work was conducted over a 19‐week experimental period to establish the growth performance, production and body composition of Nile tilapia, common carp and silver carp fed 0.0%, 0.5%, 1.0%, 3.0%, 5.0% biomass and to apparent satiation (treatments). Twelve ponds were stocked with a similar number and weight of each fish species. Two ponds were assigned to each of the treatments, and a 25% protein pelleted fish feed was used to feed fish at the specified rate of feeding. At the end of the experiment, growth, weight gain, survival, yield and body composition of fish groups were affected by the treatments. The economic effectiveness also varied among treatments. The most conspicuous attribute of the feeding rates was its lack of influence on growth (g day?1), weight gain (g per fish), yield (kg ha?1) or body composition of silver carp. The results of whole‐body proximate analysis indicated that various feeding rates had either an irregular pattern or no effects on the protein and ash gain per 100 g of fish body weight (bw) gain. The most notable exceptions were significant (P < 0.05) increases in body fat and gross energy gains in Nile tilapia, common carp and silver carp accompanied by decreases in percentages of moisture (but not in silver carp) as feeding rate increased. Among the six different feeding levels, feeding to apparent satiation (feed amount was equivalent to 2.67% of fish bw day?1) appeared to be optimal, as it significantly (P < 0.05) supported the highest fish production, income and net profit compared with all other treatments except for the 3% feeding level, for which the differences in those measurements were comparable.  相似文献   
6.
低盐水体南美白对虾与鲢鳙鱼混养的试验   总被引:8,自引:1,他引:8  
在6口低盐淡水(盐度2~10)池塘中放养体长0 8~1 0cm的南美白对虾(Penaeusvan namei)(30万尾/hm2),其中三口塘再放养鲢(Hypophthalmichthysmolitrix)、鳙(Aristichthysno bilis)夏花(体长2 0~3 0cm)(1500尾/hm2,鲢:鳙=1:1)。鱼、虾分别精养90d和60d。混养池塘中对虾的成活率(24 6%)为单养池(9 1%)的2 7倍,产量(800 0±86 7)kg/hm2为单养池的3 2倍;鱼产量为(93 9±7 9)kg/hm2,鳙的出塘规格大于鲢,产量高于鲢。混养池塘水中氨氮、亚硝态氮和溶解氧含量低;透明度和活性磷含量高;pH值波动幅度小。  相似文献   
7.
王美珍 《海洋渔业》2006,28(1):48-54
在杭州湾南岸滩涂,设计7种贝类养殖模式:平涂单养泥螺(Ⅰ)、平涂单养彩虹明樱蛤(Ⅱ)、蓄水单养青蛤(Ⅲ)、平涂混轮养泥螺和彩虹明樱蛤(Ⅳ)、平涂混养缢蛏和彩虹明樱蛤(Ⅴ)、蓄水混养缢蛏和斑节对虾(Ⅵ)和蓄水混养缢蛏和青蛤(Ⅶ),经养殖试验对它们的养殖效益作了比较。结果表明,7种养殖模式的产值/投入比值差异不显著,在1.43~1.55之间;而其效益(利润)差异较大,在2.94~21.04万元/hm2,其中以模式Ⅵ最高,是模式Ⅰ的7倍多和模式Ⅲ的4倍,模式Ⅳ比Ⅰ高86.1%,模式Ⅴ比Ⅱ高62.66%,模式Ⅲ比Ⅰ或Ⅱ高70%左右,模式Ⅳ比Ⅴ高9.81%,模式Ⅰ与Ⅱ、模式Ⅶ与Ⅲ等效益相差不大。按生态及经济效益评价这7种滩涂贝类放养模式的结果揭示,以蓄水混轮养不同栖息习性和不同食性种类(贝虾混养),充分利用空间生态位和营养生态位者为最佳;对无法蓄水的平涂以螺蛤或螺蛏混轮养为好。  相似文献   
8.
In the freshwater area of Vietnam's Mekong Delta, Barbodes gonionotus (Bleeker), Cyprinus carpio L. and Oreochromis niloticus (L.) are often reared together in rice fields. The survival rate and specific growth rate (SGR) of C. carpio showed a large variance. To understand the underlying reasons for this variation, we used multiple regressions for the variables SGR and survival rate, using the results of eight experiments in such polycultures at the Co Do rice–fish experimental station. The SGR of C. carpio declined with increasing rice density. Interspecific competition with O. niloticus also had a negative effect on C. carpio SGR. When fertilizer or manure is added to the trench of the rice–fish field or when extra food can be given to the fish, O. niloticus seems more appropriate than C. carpio. The survival rate of C. carpio depended on season, C. carpio stocking weight and density and the biomass of wild fish species. To obtain higher survival rates, one should stock fewer fish but of a larger size, after thorough eradication of wild fish species.  相似文献   
9.
The present research investigated the effect of stocking density on pond (75 m2, depth 1.2 m) production of Nile tilapia (Oreochromis niloticus) and freshwater prawn (Macrobrachium rosenbergii) stocked at a fixed 3:1 tilapia:prawn ratio. Three stocking densities were tried in triplicate: 20 000 ha−1 (treatment TP‐20), 30 000 ha−1 (TP‐30) and 40 000 ha−1 (TP‐40). The ponds were provided with bamboo as substrate for periphyton development. Bamboo poles (mean diameter 5.5 cm and 5.0 poles m−2) were posted vertically into pond bottoms, resulting in 60% additional substrate area in each pond. On average, 43 genera of algae and 17 genera of zooplankton were identified from pond water, whereas 42 genera of algae and six genera of microfauna were attached to bamboo substrates. No differences were observed between treatments in the ash‐free dry matter (AFDM), chlorophyll a and phaeophytin a content of periphyton (P>0.05). Survival of tilapia and prawn and individual weight gain of tilapia were lower (P<0.05) in treatment TP‐40. The net yields were higher (P<0.05) in treatments TP‐30 (2209 and 163 kg ha−1 105 day−1 of tilapia and prawn respectively) and TP‐40 (2162 and 141 kg ha−1 of tilapia and prawn respectively) than in treatment TP‐20 (1505 and 136 kg ha−1 of tilapia and prawn respectively). The net tilapia yields were quadratic correlated (R2=0.92) with fish stocking density. The cost–benefit analysis shows that the net profit margin was highest in treatment TP‐30 (69%), followed by TP‐20 (50%) and TP‐40 (44%).  相似文献   
10.
海水池塘养殖模式优化:概念、原理与方法   总被引:5,自引:2,他引:5  
王岩 《水产学报》2004,28(5):568-572
随着海洋渔业资源衰退和人类社会对水产品需求的持续增长,海水养殖规模逐年扩大,养殖生产对环境的影响也日益严重[1-6]。现已确认海水鱼虾类养殖是造成海洋沿岸带水域富营养化的重要污染源之一[5-8],这一严峻现实要求今后在发展海水养殖产业时不仅需要宏观上对养殖区域和养  相似文献   
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